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Cell culture media supplementation of bioflavonoids for the targeted reduction of acidic species charge variants on recombinant therapeutic proteins

机译:补充生物类黄酮的细胞培养基,用于靶向减少重组治疗性蛋白质上的酸性物种电荷变体

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摘要

Charge variants in recombinant proteins are an important series of protein modifications, whose potential role on protein stability, activity, immunogenicity, and pharmacokinetics continues to be studied. Monoclonal antibodies in particular have been shown to have a wide range of acidic species variants, including those associated with the addition of covalent modifications as well as the chemical degradation at specific peptide regions on the antibody. These variants play a significant role toward the overall heterogeneity of recombinant therapeutic proteins and are typically monitored during manufacturing to ensure they lie within proven acceptable ranges. In this work, it has been found that the supplementation of members of the bioflavonoid chemical family into mammalian cell culture media was effective toward the reduction of acidic species charge variants on recombinant monoclonal antibodies and dual variable domain immunoglobulins. The demonstrated reduction in acidic species through the use of bioflavonoids facilitates the manufacturing of a less heterogeneous product with potential improvements in antibody structure and function. (c) 2015 American Institute of Chemical Engineers Biotechnol. Prog., 31:1039-1052, 2015
机译:重组蛋白质中的电荷变异体是蛋白质修饰的重要系列,其对蛋白质稳定性,活性,免疫原性和药代动力学的潜在作用仍在继续研究中。特别是单克隆抗体已经显示出具有广泛的酸性物种变异,包括那些与共价修饰的添加以及抗体特定肽区域的化学降解相关的变异。这些变体对重组治疗性蛋白质的整体异质性起着重要作用,并且通常在生产过程中进行监控以确保它们在公认的可接受范围内。在这项工作中,已经发现将生物类黄酮化学家族的成员添加到哺乳动物细胞培养基中对于减少重组单克隆抗体和双可变结构域免疫球蛋白上的酸性物种电荷变体是有效的。通过使用生物类黄酮证明酸性物质的减少有助于制造异质性较低的产品,并可能改善抗体的结构和功能。 (c)2015美国化学工程师学会生物技术学会。 Prog。,31:1039-1052,2015

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